Baucher Marie, El Jaziri Mondher, Vandeputte Olivier
Laboratoire de Biotechnologie Végétale, Université Libre de Bruxelles (ULB), rue Adrienne Bolland 8, B-6041 Gosselies, Belgium.
J Exp Bot. 2007;58(13):3485-501. doi: 10.1093/jxb/erm185. Epub 2007 Sep 26.
Vascular tissue differentiation is essential to enable plant growth and follows well-structured and complex developmental patterns. Based on recent data obtained from Arabidopsis and Populus, advances in the understanding of the molecular basis of vascular system development are reviewed. As identified by forward and/or reverse genetics, several gene families have been shown to be involved in the proliferation and identity of vascular tissues and in vascular bundle patterning. Although the functioning of primary meristems, for example the shoot apical meristem (SAM), is well documented in the literature, the genetic network that regulates (pro)cambium is still largely not deciphered. However, recent genome-wide expression analyses have identified candidate genes for secondary vascular tissue development. Of particular interest, several genes known to regulate the SAM have also been found to be expressed in the vascular cambium, highlighting possible overlapping regulatory mechanisms between these two meristems.
维管组织分化对于植物生长至关重要,并且遵循结构良好且复杂的发育模式。基于最近从拟南芥和杨树获得的数据,本文综述了在维管系统发育分子基础理解方面的进展。通过正向和/或反向遗传学鉴定,已表明几个基因家族参与维管组织的增殖和特性以及维管束模式形成。尽管文献中对初生分生组织(例如茎尖分生组织,SAM)的功能已有充分记载,但调节(原)形成层的遗传网络仍很大程度上未被破解。然而,最近的全基因组表达分析已鉴定出次生维管组织发育的候选基因。特别值得关注的是,已发现几个已知调节茎尖分生组织的基因也在维管形成层中表达,这突出了这两种分生组织之间可能存在的重叠调节机制。